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Quantum Algorithms
Snell's law in multirefringent systems
arXiv
Authors: József Cserti, Áron Holló, László Oroszlány
Year
2024
Paper ID
38048
Status
Preprint
Abstract Read
~2 min
Abstract Words
130
Citations
N/A
Abstract
In anisotropic crystals, Maxwell's equations permit only birefringence for the propagation of light. Notwithstanding, multirefringent systems comprising more than two propagating modes exist, such as in electron optics and photonic crystals. It has been demonstrated that in such systems, the propagation of waves in the short wavelength limit results in the formation of anomalous caustics. To calculate these caustic curves, we generalized Snell's law valid for reflection and refraction in multirefringent systems possessing more than one propagating mode. The emergence of anomalous caustics in the wave function patterns obtained from rigorous quantum mechanical calculations in electron-optical systems is confirmed. These calculations were performed on electron scattering from circularly gated potential regions applied to multilayer rhombohedral graphene. Our results may generate further work to explore more complex phenomena in multirefringent systems.
Why This Paper Matters
- It adds a 2024 reference point for readers tracking recent quantum research.
- In anisotropic crystals, Maxwell's equations permit only birefringence for the propagation of light.
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